The influence of the austenite (γ) phase fraction on the hydrogen embrittlement of duplex stainless steel is investigated. Heat treatments are performed to create two duplex stainless steel specimens, containing 50% and 44% of austenite, respectively. Mechanical testing with and without hydrogen charging reveals that significant embrittlement occurs regardless of the austenite fraction. A higher austenite fraction results in a reduced ductility loss under the presence of hydrogen. Samples with a higher ferrite fraction are embrittled more due to their higher hydrogen diffusivity. In-situ tensile tests, interrupted at the ultimate tensile strength, show hydrogen-assisted cracks on the specimen surface both in austenite and ferrite and across...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
This thesis describes the metallurgical and environmental factors that influence hydrogen embrittle...
The influence of the austenite (gamma) phase fraction on the hydrogen embrittlement of duplex stainl...
Duplex stainless steels (DSS) have a two-phase microstructure of ferrite and austenite which results...
Duplex stainless steels (DSS) have a two-phase microstructure of ferrite and austenite which results...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
Hydrogen embrittlement (HE) characteristics of γ (AS), α (FS), and γ–α duplex (DS) stainless steels ...
Abstract Duplex Stainless Steels (DSSs) are an attractive class of materials characterized by a stro...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
In super duplex stainless steels (SDSSs), both austenite and ferrite are susceptible to hydrogen emb...
This study evaluates the electrochemical hydrogen charging behavior and interaction between hydrogen...
This study evaluates the electrochemical hydrogen charging behavior and interaction between hydrogen...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
This thesis describes the metallurgical and environmental factors that influence hydrogen embrittle...
The influence of the austenite (gamma) phase fraction on the hydrogen embrittlement of duplex stainl...
Duplex stainless steels (DSS) have a two-phase microstructure of ferrite and austenite which results...
Duplex stainless steels (DSS) have a two-phase microstructure of ferrite and austenite which results...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
Hydrogen embrittlement (HE) characteristics of γ (AS), α (FS), and γ–α duplex (DS) stainless steels ...
Abstract Duplex Stainless Steels (DSSs) are an attractive class of materials characterized by a stro...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
This study considers the interaction between duplex stainless steel type 2205 and electrochemically ...
In super duplex stainless steels (SDSSs), both austenite and ferrite are susceptible to hydrogen emb...
This study evaluates the electrochemical hydrogen charging behavior and interaction between hydrogen...
This study evaluates the electrochemical hydrogen charging behavior and interaction between hydrogen...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
Duplex stainless steels (DSS) have a microstructure of ferrite and austenite. These alloys have a hi...
This thesis describes the metallurgical and environmental factors that influence hydrogen embrittle...